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A 2 MHz Wireless CMOS Transceiver for Implantable Biosignal Sensing Systems

机译:用于植入式生物信号传感系统的2 MHz无线CMOS收发器

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An implementation of an implantable sensing biosystem composes of a readout circuit, a power management block, an embedded microcontroller unit (MCU), an implantable drug delivery section and a wireless uplink transceiver system. This paper describes a bi-directional wireless transceiver system for implantable sensing systems. The transceiver system is composed of an external and implantable transceiver, communicating through an inductive link. Half duplex communication between transceivers at a 10 Kbps data rate was achieved at a maximum distance of 4 cm. Command and data will be supplied to the implantable module by radio frequency (RF) telemetry utilizing an amplitude shift keying (ASK) modulated 2 MHz carrier frequency. A capacitor-less amplitude demodulation receiver architecture was produced in the research with implantable receiver core area measuring at 113.2 μm by 171.8 urn with average power dissipation at 815.1 μW at a 3.3 V single rail power supply. An active uplink transceiver utilizing load shift keying (LSK) as backward data telemetry was designed. Implantable transmitter core area measures 251.7 μm by 139.3 μm, consuming 103.62 mW while driving an RF ferrite core antenna at maximum reading range. Integrating both circuits, implantable transceiver, measuring 355.3 μm by 171.8 μm, was designed and implemented using TSMC 0.35 μm mixed-signal 2P4M 3.3 V standard CMOS process. The integrated circuit solution addressed solutions for many of the problems associated with implanted devices and introduces circuits which improve in several ways over previously published designs, in functionality and integration level. In addition to being fully integrated in plain CMOS technology, not relying at least partly on available specialized elements and expensive technologies, these building blocks improve on previous designs in performance and/or power consumption. This work succeeded in implementing building blocks for an implantable transceiver, which depends only on the absolute minimum off-chip components. A complete implantable chip is presented, which highlight the design tradeoffs and optimizations applied to the design of CMOS implantable system chips.
机译:植入式传感生物系统的实现包括读出电路,电源管理模块,嵌入式微控制器单元(MCU),植入式药物输送部分和无线上行链路收发器系统。本文介绍了一种用于植入式传感系统的双向无线收发器系统。收发器系统由外部和可植入的收发器组成,它们通过感应链路进行通信。收发器之间的半双工通信以10 Kbps的数据速率实现,最大距离为4 cm。命令和数据将通过使用幅度偏移键控(ASK)调制的2 MHz载波频率的射频(RF)遥测技术提供给可植入模块。在研究中产生了一种无电容器的幅度解调接收器架构,在3.3 V单轨电源下,可植入接收器核心面积为113.2μmx 171.8 um,平均功耗为815.1μW。设计了一个采用负载移位键控(LSK)作为后向数据遥测的有源上行链路收发器。可植入的发射器核心面积为251.7μmx 139.3μm,在最大读取范围下驱动RF铁氧体核心天线时消耗103.62 mW。集成了这两个电路的植入式收发器,尺寸为355.3μmx 171.8μm,是使用TSMC 0.35μm混合信号2P4M 3.3 V标准CMOS工艺设计和实现的。集成电路解决方案解决了与植入式设备相关的许多问题的解决方案,并引入了在功能和集成度方面比以前发表的设计以几种方式改进的电路。除了完全集成在普通CMOS技术中,不至少部分地依赖于可用的专用元件和昂贵的技术外,这些构件还改善了以前在性能和/或功耗方面的设计。这项工作成功地实现了可植入收发器的构建模块,该模块仅取决于绝对最小的片外组件。提出了完整的可植入芯片,该芯片突出了设计折衷和应用于CMOS可植入系统芯片设计的优化。

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